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Biomedical subjects

D J Murry

Publications and source records attributed to D J Murry.

10 recordsLinked to original sources

Plasma and cerebrospinal fluid pharmacokinetics of 9-aminocamptothecin (9-AC), irinotecan (CPT-11), and SN-38 in nonhuman primates.

PURPOSE: The plasma and cerebrospinal fluid (CSF) pharmacokinetics of the camptothecin analogs, 9-aminocamptothecin (9-AC) and irinotecan, were studied in a nonhuman primate model to determine their CSF penetration. METHODS: 9-AC, 0.2 mg/kg (4 mg/m2) or 0.5 mg/kg (10 mg/m2), was infused intravenously over 15 min and irinotecan, 4.8 mg/kg (96 mg/m2) or 11.6 mg/kg (225 mg/m2), was infused over 30 min. Plasma and CSF samples were obtained at frequent intervals over 24 h. Lactone and total drug forms of 9-AC, irinotecan, and the active metabolite of irinotecan, SN-38, were quantified by reverse-phase HPLC. RESULTS: 9-AC lactone had a clearance (CL) of 2.1 +/- 0.9 l/kg per h, a volume of distribution at steady state (Vd[ss]) of 1.6 +/- 0.7 l/kg and a half-life (t1/2) of 3.2 +/- 0.8 h. The lactone form of 9-AC accounted for 26 +/- 7% of the total drug in plasma. The CSF penetration of 9-AC lactone was limited. CSF 9-AC lactone concentration peaked 30 to 45 min after the dose at 11 to 21 nM (0.5 mg/kg dose), and the ratio of the areas under the CSF and plasma concentration-time curves (AUC(CSF):AUC[P]) was only 3.5 +/- 2.1%. For irinotecan, the CL was 3.4 +/- 0.4 l/kg per h, the Vd(ss) was 7.1 +/- 1.3 l/kg, and the t1/2 was 4.9 +/- 2.2 h. Plasma AUCs of the lactone form of SN-38 were only 2.0% to 2.4% of the AUCs of irinotecan lactone. The lactone form of irinotecan accounted for 26 +/- 5% of the total drug in plasma, and the lactone form of SN-38 accounted for 55 +/- 6% of the total SN-38 in plasma. The AUC(CSF):AUC(P) ratio for irinotecan lactone was 14 +/- 3%. SN-38 lactone and carboxylate could not be measured (< 1.0 nM) in CSF. The AUC(CSF):AUC(P) ratio for SN-38 lactone was estimated to be < or = 8%. CONCLUSION: Despite their structural similarity, the CSF penetration of 9-AC and SN-38 is substantially less than that of topotecan which we previously found to have an AUC(CSF):AUC(P) ratio of 32%.

Animals

Carboplatin pharmacokinetics in young children with brain tumors.

PURPOSE: The pharmacokinetic parameters and maximal tolerated systemic exposure were determined for carboplatin in young children given in combination with cyclophosphamide and etoposide. PATIENTS AND METHODS: Carboplatin was administered as part of a multiagent chemotherapy regimen to 21 pediatric patients less than 5 years of age with newly diagnosed, malignant central nervous system tumors. Patients, received cyclophosphamide, 1.2 g/m2, on day 1 and carboplatin on day 2 followed by etoposide, 100 mg/m2, each day. Carboplatin doses were calculated to achieve a targeted area under the serum concentration versus time curve (TAUC) of 5, 6.5 or 8 mg/ml.min based on each patient's measured glomerular filtration rate (GFR). Carboplatin pharmacokinetic parameters were determined after course 1 and then after every third course of therapy. RESULTS: The median carboplatin clearance and GFR after course 1 were 118 and 98 ml/min per m2, respectively. Targeted doses based on measured GFR reliably achieved the TAUC for carboplatin. The median (range) carboplatin clearance for four children less than 1 year of age was 76 (66-84) ml/min per m2, significantly lower (P = 0.05) than the value of 131 (80-158) ml/min per m2 for children from 1 to 4 years of age. The mean carboplatin clearance declined by 23% in 12 patients studied from course 1 to course 4 of therapy. The decrease was greater than 20% (range 20-53%) in 7 of the 12 patients studied. CONCLUSION: Carboplatin clearance for children aged between 1 and 4 years at diagnosis is approximately 45% higher than previously reported for pediatric patients, but declines after four courses of therapy. For children less than 1 year of age, carboplatin clearance per square meter is approximately 40% lower than patients 1 to 4 years of age. There are corresponding differences in GFR that provide a plausible explanation for the age and therapy-related changes in carboplatin clearance. Toxicity was acceptable for patients treated at a TAUC of 6.5 mg/ml.min for carboplatin given with etoposide and cyclophosphamide. The average carboplatin dose required for this AUC was 767 mg/m2.

Adolescent

Liver volume as a determinant of drug clearance in children and adolescents.

Many drugs eliminated by the liver exhibit age-related differences in systemic clearance, necessitating different dosage requirements in children and adults. However, the physiological basis for these age-related changes is not well defined, including the importance of liver size in determining systemic clearance. Therefore, magnetic resonance imaging was used to determine liver volume in pediatric and adolescent patients, in whom systemic clearance of three model substrates [lorazepam (0.03 mg/kg), antipyrine (10 mg/kg), and indocyanine green (ICG; 0.5 mg/kg)] was also determined. In 16 children (ages 3.3-18.8 years; 8 boys), liver volume ranged from 469 to 1640 ml (median 937), and was significantly related to age, body weight, and body surface area (BSA). Younger children had larger liver normalized to body weight (ml/kg), but there was no difference when liver volume was normalized to BSA (ml/m2). Unnormalized lorazepam and ICG clearances (ml/min) were significantly related to absolute liver volume (r2 = 50.2% and 31.4%, respectively), whereas unnormalized antipyrine clearance was not. Lorazepam, ICG, and antipyrine clearance normalized to BSA did not exhibit age-related changes, nor did lorazepam or ICG clearance normalized to body weight decreased significantly with increasing age (r2 = 36.9%, p=0.012), as did antipyrine clearance relative to liver volume. Thus, age-related changes in drug clearance and the importance of liver volume may differ based on the principal hepatic mechanisms involved in drug elimination.

Adolescent

Phase I study of escalating targeted doses of carboplatin combined with ifosfamide and etoposide in treatment of newly diagnosed pediatric solid tumors.

BACKGROUND: The combination of carboplatin, ifosfamide, and etoposide has shown promising activity in a variety of relapsed childhood solid tumors but has not been studied in newly diagnosed patients. PURPOSE: The tolerance for and activity of escalating targeted doses of carboplatin combined with ifosfamide and etoposide (ICE) were assessed in children with advanced germ cell tumors or other rare solid tumors for which no standard therapy exists. METHODS: Fifteen children with newly diagnosed solid tumors received ICE chemotherapy. Individualized carboplatin doses were calculated to achieve a target area under the concentration x time curve (AUC) and adjusted for the glomerular filtration rate (estimated by 99mTc-labeled diethylene-triamine pentaacetic acid clearance). Cohorts of at least three patients received carboplatin at an initial target AUC of 6 mg.min/mL, with escalations of 2 mg.min/mL in subsequent cohorts. Carboplatin was given on day 1, followed by ifosfamide at 2 g/m2 per day and etoposide at 100 mg/m2 per day on days 2 through 4. All patients received at least two courses of therapy in the absence of progressive disease, and as many as eight courses could be given. RESULTS: The 15 patients received a total of 46 assessable courses of ICE. Myelosuppression was the dominant toxicity; 30 courses (67%) resulted in hospitalization for febrile neutropenia. Neutropenia was dose limiting at the carboplatin target AUC of 12 mg.min/mL. One complete and eight partial responses were seen in the 14 assessable patients; two additional patients had at least partial responses documented at surgery or autopsy. Six patients are without evidence of disease at a median of 548 days after diagnosis. CONCLUSION: ICE chemotherapy, with the carboplatin dose based on a target AUC of 10 mg.min/mL, is tolerable and has significant activity in a variety of rare malignancies, including extragonadal germ cell tumors. IMPLICATIONS: The combination of carboplatin, etoposide, and ifosfamide holds promise in the treatment of rare pediatric malignancies.

Antineoplastic Combined Chemotherapy Protocols

Altered etoposide pharmacokinetics and time to engraftment in pediatric patients undergoing autologous bone marrow transplantation.

PURPOSE: To determine the pharmacokinetics and clinical response of high-dose etoposide in combination with carboplatin for pediatric cancer patients undergoing autologous bone marrow transplant. PATIENTS AND METHODS: Pharmacokinetic parameters for etoposide were determined at doses of 960, 1,200, and 1,500 mg/m2 when given with high-dose carboplatin and followed by autologous marrow rescue. Twenty-nine patients (age 1.6 to 23 years) with refractory or relapsed solid tumors were studied. Etoposide was administered in three divided doses as a 6-hour infusion on alternate days with carboplatin. Etoposide concentrations (n = 14) were determined during and following each of three doses. Patient characteristics, drug dose, and pharmacokinetic parameters were examined as predictors of marrow engraftment as reflected by recovery of granulocytes and platelets. RESULTS: The median values for clearance (Cl) and terminal half-life (T1/2 beta) of etoposide were 14.3 mL/min/m2 (range, 6.8 to 29.6) and 5.9 hours (range, 3.7 to 39). After adjustment for body size, Cl and volume of distribution did not correlate with any laboratory parameter or patient characteristic. However, seven patients who received concomitant anticonvulsant therapy had significantly higher (P < .01) average etoposide Cl values (23.7 mL/min/m2) than 22 patients who did not receive drugs known to alter hepatic metabolism (13.4 mL/min/m2). The median etoposide Cl value in patients who received concurrent carboplatin but no anticonvulsant agents is substantially lower than values previously reported in either children or adults. Higher etoposide concentrations were significantly associated with longer times to recovery of granulocyte and platelet counts. CONCLUSION: Etoposide Cl is significantly higher in patients who receive concomitant anticonvulsant therapy, which is consistent with clinically important hepatic enzyme induction. The lower etoposide Cl associated with high-dose carboplatin suggests that carboplatin may impair etoposide metabolism. Furthermore, high etoposide concentrations appeared to prolong time to recovery of hematopoietic function.

Adolescent

Ifosfamide-induced hyperpigmentation.

BACKGROUND: Pigmented banding of the nails and hyperpigmentation of hands and feet may occur during cyclophosphamide therapy. Ifosfamide, an analogue of cyclophosphamide, might be expected to cause similar pigmentary changes, but, to the knowledge of the authors, there are no reports of this. METHODS: The authors describe skin pigment changes in a 5-year-old patient receiving ifosfamide, MESNA, and etoposide for the treatment of relapsed Wilms tumor. RESULTS: A review of the literature concerning cyclophosphamide-induced pigmentary changes is presented, along with a discussion of the possible correlation of renal dysfunction with pigmentary changes. CONCLUSIONS: This case should alert health care providers to this uncommon adverse effect of ifosfamide.

Child, Preschool

Pharmacokinetics and acute renal effects of continuously infused carboplatin.

Carboplatin was given as a 24-hour infusion at high doses to pediatric patients with cancer (n = 11) and pharmacokinetic parameters and renal effects were determined. Median carboplatin clearance for course 1 (151 ml/min per 1.73 m2;) was not significantly different from clearance for course 2 (144 ml/min per 1.73 m2; p = 0.33). The median glomerular filtration rate measured before (159 ml/min per 1.73 m2) and after course 1 (161 ml/min per 1.73 m2) did not differ significantly (p = 0.4). Binding was time dependent but modest with a median free fraction at the end of infusion of 0.82. Pharmacokinetic parameters for continuous-infusion carboplatin are similar to those reported for short infusions, but the median dose of 817 mg/m2 required to achieve an acceptable systemic exposure in these patients was 45% greater than the previously suggested maximum tolerated dosage. Continuous infusion carboplatin did not alter carboplatin clearance or adversely effect glomerular filtration rate during a second course, showing the feasibility of this alternative dosage strategy to enhance therapeutic effects.

Adolescent

Renal function and methotrexate clearance in children with newly diagnosed leukemia.

STUDY OBJECTIVES: To determine whether glomerular filtration rate (GFR) changes during induction chemotherapy in children with leukemia, and to examine GFR as a determinant of pharmacokinetic variability of methotrexate clearance. DESIGN: Prospective, unblinded observational study in consecutive patients. SETTING: A research hospital. PATIENTS: Thirty-eight children newly diagnosed with acute lymphoblastic leukemia. INTERVENTIONS: The patients received either high-dose methotrexate 1 g/m2 intravenously over 24 hours or low-dose methotrexate 30 mg/m2 orally every 6 hours for six doses; both regimens were followed by an intensive six-drug chemotherapy regimen given over 6 weeks. Glomerular filtration rate was determined in each subject before and at the conclusion of induction therapy. MEASUREMENTS AND MAIN RESULTS: The GFR was determined from 99mTc-DTPA serum clearance in all patients, and methotrexate clearance was estimated from serial serum concentrations in 18 of these children who received high-dose methotrexate. Median values for GFR at diagnosis (131 ml/min/1.73 m2) and after induction therapy (120 ml/min/1.73 m2) were not significantly different (p = 0.26) but were highly variable (range 49-274 ml/min/1.73 m2). Body size, age, and serum creatinine were correlated significantly with GFR at diagnosis. Amphotericin B therapy (6 patients) significantly decreased GFR (p = 0.046) without a corresponding increase in serum creatinine. Methotrexate clearance (58-155 ml/min/m2) was significantly (p = 0.007) correlated with GFR, but GFR accounted for only 37% of the variability of methotrexate clearance. CONCLUSIONS: The GFR was normal but highly variable in these children with leukemia and was significantly altered by amphotericin. Our results explain little of the intersubject variability in methotrexate clearance.

Administration, Oral

Formation of platinum-DNA adducts in pediatric patients receiving carboplatin.

STUDY OBJECTIVE: To determine the extent of platinum-DNA (Pt-DNA) adduct formation in peripheral white blood cells of children with cancer. DESIGN: Prospective study. SETTING: Pediatric research hospital. PATIENTS: Twenty-seven children receiving carboplatin as part of therapy as defined by clinical research protocols. INTERVENTIONS: Patients received various dosages of carboplatin over 1, 3, or 24 hours as a primary component of combination chemotherapy for pediatric solid tumors, brain tumors, or large cell lymphoma. MEASUREMENTS AND MAIN RESULTS: The Pt-DNA adducts were detectable in 10 (37%) of 27 patients. The median value was 3.4 fmol Pt/micrograms DNA (range 1.7-31.2 fmol) in patients with measurable values. CONCLUSION: The Pt-DNA adducts were detected less frequently in pediatric patients than reported in adults. Variables that influenced their detection were higher carboplatin dosages or systemic exposure and short (1-3 hrs) versus prolonged (24 hrs) infusions.

Adult

Comparative clinical pharmacology of cisplatin and carboplatin.

The platinum compounds cisplatin and carboplatin are active against a wide range of adult and pediatric malignancies. Whereas both exert their cytotoxic effect by incorporating into DNA, they have substantially different systemic and cellular pharmacology. In addition, their toxicity profiles are much different. Substantial interpatient pharmacokinetic variability and narrow therapeutic indexes of the two agents led to the development of several dosing strategies. Although these strategies reduce pharmacokinetic variability, their effect on improving patient outcome remains to be determined.

Animals